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Online since: February 2012
Authors: Wan Jie Wang, Jing Wu Wang, Ling He Cheng, Yan Xia Cao, Gui Xun Li
Preparation and Chemical Structure of RIC of PP/ modified PA66 In-situ Microfibrillar Composite Linghe Cheng a, Wanjie Wang b , Yanxia Cao c, Guixun Li d and Jingwu Wang e School of Materials Science and Engineering, Zhengzhou UniVersity, Zhengzhou 450052, China aclh6603@126.com, b wwj@zzu.edu.cn, c yxcao@zzu.edu.cn, d liguixun@126.com, e jingwuwang@zzu.edu.cn Keywords: poly (propylene), polyamide, in-situ microfibrillar, reactive interface combination agent, chemical structure Abstract: Reactive interface combination agent (RIC) was synthesized by using reaction mixture technique starting from polypropylene(PP), ethylene-propylene or butadiene-styrene elastomer, epoxy compound and monomer-assisted in the presence of a free radical initiator.
The chemical structure of RIC and the effect of change in the ratio of raw material during its preparation on constitute and structure was investigated.
Experimental Materials PP (F401) was from Luoyang petrochemical Co.
Journal of Applied Polymer Science, 2001, 79(8): 1401-1415
[11] Y.J.Sun,G.H.Hu,M.Lambla..Journal of Applied Polymer Science,1995, 57(9):1043-1054.
Online since: June 2014
Authors: Mohd Afendi, N.A.M. Amin, M.S. Abdul Majid, R. Daud, J.A. M. Haameem, E.A.H. Engku Ubaidillah
This paper will involve formulating a procedure for extracting Napier grass fibres to be used as reinforcement materials.
This fabrication process was conducted at Advanced Materials Research Composites (AMREC) facilities at Kulim, Kedah.
This implies that a Napier grass polyester reinforced material could be developed for designing light weight materials.
References [1] Myrtha Karina, Holia Onggo and Anung Syampurwadi. 2007, Journal of Biological Sciences
Mechanical Behaviour of Materials 1999; 3:191–196
Online since: February 2013
Authors: Fa Suo Zhao, Wen Ling Chen
First, without considering the material damage, establish the expression of creep deformation.
Journal of Northwest university (natural science edition), Vol. 39(1) (2009), p.109-113 [2] LI Hua-min, LI Zhen-hua, SHU Cheng-dong:Testing study on creep characteristics of marble.
International Journal of Rock Mechanics and Mining Sciences, 2004, 41(S1): 1-7
Journal of earth sciences and environment. 2010, 32(2): 200-204
Journal of Engineering Geology, 2007,15(04):545-548
Online since: August 2011
Authors: Yi Min Qin, Li Qing Huang
The preparation and characterization of carboxymethyl chitosan wound dressings Yimin QIN1, Liqing HUANG2 1 College of Material and Textile Engineering, Jiaxing College, Jiaxing City, Zhejiang Province, China; 2 College of Material Science and Engineering, Changzhou University, Changzhou 213164, Jiangsu Province, China.
Qin: Journal of Applied Polymer Science Vol.50 (1993), p. 1773 [2] A.
Zhang: Tsinghua Science and Technology Vol.5 (2000), p. 432 [4] Y.
Xiao: Journal of Applied Polymer Science Vol.83 (2002), p. 1233 [7] P.
Song: Journal of Applied Polymer Science Vol.99 (2006), p. 3110
Online since: May 2019
Authors: Varinthorn Boonyaroj, Sirichai Saramanus
The Application of Remote-Controlled Assisted Surface Water Sampling Sirichai Saramanus1,a*, Varinthorn Boonyaroj2,b 1Division of Computer Science, Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon, Bangkok 10800, Thailand 2Division of Environmental Science and Technology, Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon, Bangkok 10800, Thailand a*sirichai.s@rmutp.ac.th, varinthorn.b@rmutp.ac.thb Keywords: Remote-controlled, water sampler, water quality Abstract.
Acknowledgements The authors gratefully acknowledge the Institute of Research and Development, Rajamangala University of Technology, Phra Nakhon for providing research funding and the Division of Computer Science and Division of Environmental Science and Technology at the Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon for the provision of their facilities.
References [1] APHA, AWWA, and WEF, “Standard methods for the examination of water and wastewater”, 21st edition Standard Methods, Washington, D.C., 2005 [2] Boonyaroj, V., Peansawang, P., Sonchan, N., Sukrasorn, A., "Environmental Survey on Physicochemical Parameters in Surface Water: A Case of Klong Prem Prachakorn, Thailand", Applied Mechanics and Materials, Vol. 804, pp. 231-234, 2015 [3] Brito, M., Griffiths, G., Ferguson, J., Hopkin, D., Mills, R., Pedersen, R., MacNeil, E., “A behavioural probabilistic risk assessment framework for managing Autonomous Underwater Vehicle deployments”, Journal of Atmospheric and Oceanic Technology, Vol. 29, pp. 1689-1703, 2012 [4] Khalil, B., Ouarda, T., St-Hilaire, A..
“Estimation of water characteristics at unguarded sites using artificial neutral networks and canonical co-relation analysis”, Journal of Hydrology, Vol. 405, pp. 277–287, 2011 [5] Gafurov, S.A., Klochkov, E.V..
“Autonomous unmanned underwater vehicles development tendencies”, Procedia Engineering, Vol. 106, pp. 141-148, 2015 [6] Li, Y., Chang, W., “Current status and trend of autonomous underwater vehicle”, Journal of Robot Technique and Application, Vol. 1, pp. 25-31, 2007
Online since: February 2012
Authors: Heng Li
Study of an Inorganic Ion Exchanger Al2Ti(PO4)3.3333 Jinhe Jiang MicroScale Science Institute , Department of Chemistry and Chemical Engineering ,Weifang University, Weifang, 261061,China Corresponding author.
New complex inorganic ion exchanger Al2Ti(PO4)3.3333 was synthesized by a solid state reaction crystallization method. using Al2O3, TiO2 and NH4H2PO4 as raw materials.
Introduction Lithium and its compounds are widely used in ceramics, medicine, air conditioning, catalysts, high-energy lithium battery and light aluminum alloy, etc., especially for the thermonuclear reaction, lithium is the essential raw material[1-2].
Rare Metal, 2007,26(6),121 [2] Y.F.Liu, Kenta Ooi: Inoranic ion exchanger with ion-memery ability, J.Ion Exchange and Adsorption. 1994,10(3),246 [3] D.Q.Dong, J.Zhong, D.L.Liu, Y.F.Liu: LiCu0.5Mn1.5O4 synthesis and Li+ extraction/reaction with it in the aqueous phase, J.China Journal of Applied Chemistry . 1998,15(3),11 [4] Zhong h..
Prpperty of H2TiO3 type ion-exchangers and extraction of lithium from brine of natural gas wells J.Chinese Journal of Applied Chemistry.2000,17(3),307
Online since: February 2011
Authors: Ding Guo Zhang, Yue Chen Duan
Introduction In some engineering fields like aerospace, robotics, vehicles, and mechanical engineering, the recent mechanical systems are with more complex configurations, lighter materials, larger scales, higher speed, and more accurate movements.
Scott: Journal of Vibration and Acoustics.
Scott: Journal of Vibration and Acoustics.
Scott: Journal of Sound and Vibration.
Dubowsky: ASME Journal of Mechanical Design.
Online since: April 2014
Authors: Hui Li, Jing Long Liang
Therefore, the converter dust recovery, as the BF or steelmaking raw materials reuse.
Wet processing mainly recover the valuable metals (especially iron), the production of chemical or steel raw materials, reducing environmental pollution, create economic benefits. 
Journal of Environmental Sciences, Vol. 25 (2013), p.1226-1234
Construction and Building Materials, Vol. 25 (2011), p. 308-312
Journal of Materials Research and Technology, Vol. 2 (2013), p.88-91
Online since: August 2010
Authors: Hiroyuki Hamada, Saburo Tanaka, Yoshimi Hatsukade, Asami Nakai, Y. Shinyama, Y. Takai, M.S. Aly-Hassan
Braided carbon fiber reinforced plastics (CFRP) is one of the multifunctional materials for applications to industrial products.
Furthermore, braided CFRP has superior mechanical properties as the fibers are continued, and is multifunctional material with high degree of freedom in design [2].
Yokoyama: Journal of Reinforced Plastics and Composites Vol. 13 (1994), p. 740 [2] A.
Yokoyama: Journal of Reinforced Plastics and Composites Vol. 11 (1992), p. 618 [3] A.
Yokoyama: Journal of Reinforced Plastics and Composites Vol. 11 (1992), p. 600 [4] T.
Online since: December 2013
Authors: Ya Bin Chen
Johnson: International Journal of Mechanical Sciences, Vol. 9 (1967) No.6, p.389
Leonov: Journal of Applied Mechanics and Technical Physics, Vol. 6 (1965) No.6, p.50
Lv: Chinese Journal of Solid Mechanics(In Chinese), 1983 No.4, p.83
Mooney: Journal of Applied Physics, Vol. 11 (1940) No.9, p.582
Labed: International Journal of Engineering Science, Vol. 41 (2003) No.19, p.2213.